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Unfocused Extracorporeal Shock Waves Induce Anabolic Effects in Rat Bone

机译:不集中的体外冲击波在大鼠骨中引起合成代谢作用

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摘要

textabstractAbstract. BACKGROUND: Extracorporeal shock waves are known to stimulate the differentiation of mesenchymal stem cells toward osteoprogenitors and induce the expression of osteogenic-related growth hormones. The aim of this study was to investigate if and how extracorporeal shock waves affected new bone formation, bone microarchitecture, and the mechanical properties of bone in a healthy rat model, in order to evaluate whether extracorporeal shock wave therapy might be a potential treatment for osteoporosis.METHODS: Thirteen rats received 1000 electrohydraulically generated unfocused extracorporeal shock waves to the right tibia. The contralateral, left tibia was not treated and served as a control. At two, seven, twenty-one, and forty-nine days after administration of the shock waves, in vivo single-photon-emission computed tomography (SPECT) scanning was performed to measure new bone formation on the basis of uptake of technetium-labeled methylene diphosphonate ((99m)Tc-MDP) (n = 6). Prior to and forty-nine days after the extracorporeal shock wave therapy, micro-computed tomography (micro-CT) scans were made to examine the architectural bone changes. In addition, mechanical testing, microcrack, and histological analyses were performed.RESULTS: Extracorporeal shock waves induced a strong increase in (99m)Tc-MDP uptake in the treated tibia compared with the uptake in the untreated, control tibia. Micro-CT analysis showed that extracorporeal shock waves stimulated increases in both trabecular and cortical volume, which resulted in higher bone stiffness compared with that of the control tibiae. Histological analysis showed intramedullary soft-tissue damage and de novo bone with active osteoblasts and osteoid in the bone marrow of the legs treated with extracorporeal shock waves. Microcrack analysis showed no differences between the treated and control legs.CONCLUSIONS: This study shows that a single treatment with extracorporeal shock waves induces anabolic effects in both cancellous and cortical bone, leading to improved biomechanical properties. Furthermore, treatment with extracorporeal shock waves results in transient damage to the bone marrow, which might be related to the anabolic effects. After further examination and optimization, unfocused extracorporeal shock waves might enable local treatment of skeletal sites susceptible to fracture.
机译:textabstractAbstract。背景:体外冲击波可刺激间充质干细胞向骨祖细胞分化并诱导成骨相关生长激素的表达。这项研究的目的是研究在健康大鼠模型中,体外冲击波是否以及如何影响新的骨骼形成,骨骼微结构和骨骼的力学性能,以评估体外冲击波疗法是否可能成为骨质疏松症的潜在治疗方法方法:十三只大鼠接受了1000个电液产生的未聚焦的体外冲击波至右胫骨。对侧左胫骨未进行治疗,仅作为对照。给予冲击波后第2、7、21和49天,根据,标记的摄取情况,进行了体内单光子发射计算机断层扫描(SPECT)扫描以测量新骨的形成二膦酸二甲酯((99m)Tc-MDP)(n = 6)。在体外冲击波治疗之前和之后的49天,进行了微计算机断层扫描(micro-CT)扫描以检查建筑骨的变化。此外,还进行了机械测试,微裂纹和组织学分析。结果:与未治疗的对照胫骨相比,体外冲击波引起的经治疗的胫骨(99m)Tc-MDP吸收大大增加。 Micro-CT分析表明,体外冲击波刺激了小梁和皮质体积的增加,与对照胫骨相比,导致了更高的骨骼刚度。组织学分析显示,用体外冲击波治疗的腿部骨髓中有髓内软组织损伤和新生骨,其中有活跃的成骨细胞和类骨质。微裂纹分析显示治疗的腿和对照的腿之间没有差异。结论:这项研究表明,用体外冲击波进行的单次治疗可在松质骨和皮质骨中诱导合成代谢作用,从而改善生物力学性能。此外,用体外冲击波进行治疗会导致对骨髓的短暂损伤,这可能与合成代谢作用有关。经过进一步检查和优化后,未聚焦的体外冲击波可能会导致局部治疗容易骨折的骨骼部位。

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